Milan, Italy

Stefano Koman


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Stefano Koman

Introduction

Stefano Koman is a notable inventor based in Milan, Italy. He has made significant strides in the field of biomedical engineering, particularly in the development of implantable devices. His work focuses on creating solutions that enhance tissue regeneration and reconstruction.

Latest Patents

Stefano Koman holds a patent for a "Three-dimensional implantable matrix with reduced foreign body response." This innovative implantable and biodegradable polymeric matrix is designed to minimize the foreign body response during the regeneration and reconstruction of soft and connective tissues and organs. The matrix features a density equal to or lower than 40 kg/m³, with a plurality of local thicknesses of a solid component having an arithmetic mean equal to or lower than 95 μm. Additionally, it has an average size of pores or void spaces equal to or lower than 15,000 μm, a surface roughness of the solid component with an arithmetic mean equal to or lower than 3 μm, and a contact angle of the solid component lower than 110°, ideally ranging from 10° to 90°, and more preferably from 30° to 60°.

Career Highlights

Stefano Koman is currently associated with Tensive Srl, where he continues to push the boundaries of innovation in medical technology. His expertise and dedication to improving patient outcomes through advanced materials and designs have positioned him as a key figure in his field.

Collaborations

Stefano collaborates with talented professionals such as Irini Gerges and Alessandro Tocchio. Their combined efforts contribute to the advancement of innovative solutions in the biomedical sector.

Conclusion

Stefano Koman's contributions to the field of biomedical engineering, particularly through his patented innovations, demonstrate his commitment to enhancing medical technology. His work continues to pave the way for future advancements in tissue regeneration and reconstruction.

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